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核因子-κB作为细胞辐射反应调控及辐射对策识别的关键因子。

NF-kB as a key player in regulation of cellular radiation responses and identification of radiation countermeasures.

作者信息

Singh Vijay, Gupta Damodar, Arora Rajesh

机构信息

Division of Radiation Biosciences, Institute of Nuclear Medicine & Allied Sciences, Brig SK Mazumdar Marg, Timarpur, Delhi, India.

出版信息

Discoveries (Craiova). 2015 Mar 31;3(1):e35. doi: 10.15190/d.2015.27.

Abstract

Nuclear factor (NF)-κB is a transcription factor that plays significant role in immunity, cellular survival and inhibition of apoptosis, through the induction of genetic networks. Depending on the stimulus and the cell type, the members of NF-κB related family (RelA, c-Rel, RelB, p50, and p52), forms different combinations of homo and hetero-dimers. The activated complexes (Es) translocate into the nucleus and bind to the 10bp κB site of promoter region of target genes in stimulus specific manner. In response to radiation, NF-κB is known to reduce cell death by promoting the expression of anti-apoptotic proteins and activation of cellular antioxidant defense system. Constitutive activation of NF-κB associated genes in tumour cells are known to enhance radiation resistance, whereas deletion in mice results in hypersensitivity to IR-induced GI damage. NF-κB is also known to regulate the production of a wide variety of cytokines and chemokines, which contribute in enhancing cell proliferation and tissue regeneration in various organs, such as the GI crypts stem cells, bone marrow etc., following exposure to IR. Several other cytokines are also known to exert potent pro-inflammatory effects that may contribute to the increase of tissue damage following exposure to ionizing radiation. Till date there are a series of molecules or group of compounds that have been evaluated for their radio-protective potential, and very few have reached clinical trials. The failure or less success of identified agents in humans could be due to their reduced radiation protection efficacy. In this review we have considered activation of NF-κB as a potential marker in screening of radiation countermeasure agents (RCAs) and cellular radiation responses. Moreover, we have also focused on associated mechanisms of activation of NF-κB signaling and their specified family member activation with respect to stimuli. Furthermore, we have categorized their regulated gene expressions and their function in radiation response or modulation. In addition, we have discussed some recently developed radiation countermeasures in relation to NF-κB activation.

摘要

核因子(NF)-κB是一种转录因子,通过诱导基因网络在免疫、细胞存活和细胞凋亡抑制中发挥重要作用。根据刺激因素和细胞类型,NF-κB相关家族成员(RelA、c-Rel、RelB、p50和p52)形成同型和异型二聚体的不同组合。活化的复合物易位进入细胞核,并以刺激特异性方式与靶基因启动子区域的10bp κB位点结合。已知在辐射响应中,NF-κB通过促进抗凋亡蛋白的表达和细胞抗氧化防御系统的激活来减少细胞死亡。已知肿瘤细胞中NF-κB相关基因的组成性激活会增强辐射抗性,而在小鼠中缺失则会导致对IR诱导的胃肠道损伤高度敏感。还已知NF-κB调节多种细胞因子和趋化因子的产生,这些因子有助于在暴露于IR后增强各种器官(如胃肠道隐窝干细胞、骨髓等)中的细胞增殖和组织再生。还已知其他几种细胞因子会发挥强大的促炎作用,这可能导致暴露于电离辐射后组织损伤增加。迄今为止,已经评估了一系列分子或化合物组的辐射防护潜力,很少有进入临床试验的。已鉴定药物在人体中的失败或不太成功可能是由于其辐射防护功效降低。在本综述中,我们将NF-κB的激活视为筛选辐射对策剂(RCA)和细胞辐射反应的潜在标志物。此外,我们还关注了NF-κB信号激活的相关机制及其在刺激方面特定家族成员的激活。此外,我们对其调节的基因表达及其在辐射反应或调节中的功能进行了分类。此外,我们还讨论了一些与NF-κB激活相关的最近开发的辐射对策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87e4/7159829/9ee70709c88e/discoveries-03-035-g001.jpg

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